Fodor S P, Lagarias J C, Mathies R A
Department of Chemistry, University of California, Berkeley 94720.
Biochemistry. 1990 Dec 18;29(50):11141-6. doi: 10.1021/bi00502a018.
Resonance Raman vibrational spectra of the Pr and Pfr forms of oat phytochrome have been obtained at room temperature. When Pr is converted to Pfr, new bands appear in the C = C and C = N stretching region at 1622, 1599, and 1552 cm-1, indicating that a major structural change of the chromophore has occurred. The Pr to Pfr conversion results in an 11 cm-1 lowering of the N-H rocking band from 1323 to 1312 cm-1. Normal mode calculations correlate this frequency drop with a Z----E isomerization about the C15 = C16 bond. A line at 803 cm-1 in Pr is replaced by an unusually intense mode at 814 cm-1 in Pfr. Calculations on model tetrapyrrole chromophores suggest that these low-wavenumber modes are hydrogen out-of-plane (HOOP) wagging vibrations of the bridging C15 methine hydrogen and that both the intensity and frequency of the C15 HOOP mode are sensitive to the geometry around the C14-C15 and C15 = C16 bonds. The large intensity of the 814-cm-1 mode in Pfr indicates that the chromophore is highly distorted from planarity around the C15 methine bridge. If the Pr----Pfr conversion does involve a C15 = C16 Z----E isomerization, then the intensity of the C15 HOOP mode in Pfr argues that the chromophore has an E,anti conformation. On the basis of a comparison with the vibrational calculations, the low frequency (803 cm-1) and the reduced intensity of the C15 HOOP mode in Pr suggest that the chromophore in Pr adopts the C15-Z,syn conformation.
已在室温下获得燕麦光敏色素Pr和Pfr形式的共振拉曼振动光谱。当Pr转化为Pfr时,在1622、1599和1552 cm-1的C = C和C = N伸缩区域出现新的谱带,这表明发色团发生了主要的结构变化。Pr到Pfr的转化导致N-H摇摆带从1323 cm-1降低到1312 cm-1,降低了11 cm-1。简正模式计算将该频率下降与围绕C15 = C16键的Z----E异构化相关联。Pr中803 cm-1处的谱线被Pfr中814 cm-1处异常强烈的模式所取代。对模型四吡咯发色团的计算表明,这些低波数模式是桥连C15次甲基氢的氢面外(HOOP)摇摆振动,并且C15 HOOP模式的强度和频率都对C14-C15和C15 = C16键周围的几何结构敏感。Pfr中814-cm-1模式的高强度表明发色团在C15次甲基桥周围高度偏离平面。如果Pr----Pfr转化确实涉及C15 = C16 Z----E异构化,那么Pfr中C15 HOOP模式的强度表明发色团具有E,反式构象。基于与振动计算的比较,Pr中C15 HOOP模式的低频(803 cm-1)和降低的强度表明Pr中的发色团采用C15-Z,顺式构象。